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United States Patent |
6,033,256
|
Odorfer
|
March 7, 2000
|
Slimline plug-in connector
Abstract
The present invention relates to a plug-in connector (1) for connection to
a firing element receptacle (2), having a plug adapter (3), locking arms
(4) and a plug body (5), the plug body having in a cable-receiving groove,
which has teeth (10), a connecting cable (6) which is connected to
contacts (7, 8), and having a housing cover (11), which rests on the upper
side of the plug body (5). The fastening of the housing cover (11) on the
upper side of the plug body (5) takes place by means of lateral and rear
fastening lugs (12, 13), which extend downwards from the cover (11), the
rear fastening lugs (13) being clipped into by detents (14), which are
arranged on U-shaped flexible legs (15), which in turn are arranged in the
vicinity of the cable-receiving groove (9) on the plug body (5).
Inventors:
|
Odorfer; Frank (Nuremberg, DE)
|
Assignee:
|
Framatome Connectors International (Courbevoie, FR)
|
Appl. No.:
|
106618 |
Filed:
|
June 29, 1998 |
Foreign Application Priority Data
| Jul 03, 1997[DE] | 197 28 448 |
Current U.S. Class: |
439/465 |
Intern'l Class: |
H01R 013/127 |
Field of Search: |
439/465-467,687,696,731,357,341
|
References Cited
U.S. Patent Documents
5080603 | Jan., 1992 | Mouissie | 439/353.
|
Foreign Patent Documents |
0591948 A2 | Apr., 1994 | EP.
| |
Primary Examiner: Gellner; Michael L.
Assistant Examiner: Hammond; Briggitte
Attorney, Agent or Firm: Perman & Green, LLP
Claims
I claim:
1. A plug-in connector (1) for connection to a firing element receptacle
(2), having a plug adapter (3), locking arms (4) and a plug body (5), the
plug body having a cable-receiving groove, which has teeth (10), a
connecting cable (6) which is connected to contacts (7, 8), and having a
housing cover (11), which rests on the upper side of the plug body (5),
characterized in that lateral and rear fastening lugs (12, 13) disposed on
said housing cover (11) which extend downwards from the cover (11),
U-shaped flexible legs (15) disposed on the plug body, said U-shaped
flexible legs having detents and being arranged on said plug body such
that the detents on the U-shaped flexible legs clip into the rear
fastening lugs (13) which said U-shaped flexible legs in turn are arranged
in the cable-receiving groove (9) on the plug body (5).
2. The plug-in connector according to claim 1, characterized in that the
U-shaped flexible legs each having a free end disposed oppositely of a
bottom and each arranged opening upwards and have a first straight leg
(16), the free end of which is connected to the plug body (5) at its
bottom, having a curved region (17), which extends to the upper side of
the plug body (5) and a second straight leg (18), at the free end of which
the detent (14) is arranged.
3. The plug-in connector according to claim 2, characterized in that the
underside of the cover (11) has U-shaped profiles (19), which are shaped
to complement the second straight leg (18) and at least part of the curved
part (17) of the U-shaped flexible leg, so that these profiles receive the
flexible legs and the rear fastening lugs of the cover represent part of
these profiles.
4. The plug-in connector according to claim 1, characterized in that the
lateral fastening lugs (12) have bevelled sides, which engage in
correspondingly bevelled recesses (22) in the plug body (5) and have
fastening detents (23), which clip into fastening grooves (24) at the
lower end of the bevelled recesses (22).
5. The plug-in connector according to claim 1, characterized in that the
plug body (5) and the cover (11) are provided with openings (25, 26, 27,
28), which are shaped in such a way that they receive secondary locking
arms (29, 30), which in the state in which they are inserted into the plug
body (5) lie between the plug adapter (3) and the locking arms (4), in
order to fix the locking arms in this vertical position.
6. The plug-in connector according to claim 5, characterized in that at
least one of the secondary locking arms is provided with an arm attachment
(31), which is shaped in such a way that it removes a jumpering clip (32)
from at least one contact pin (33) in the firing element receptacle (2).
7. The plug-in connector according to claim 6, characterized in that the
arm attachment (31) extends transversely to the locking arm on which it is
arranged.
8. A plug-in connector for connection to a firing element receptacle,
having a plug adapter, first locking arms and a plug body, the plug body
having a cable-receiving groove, a connecting cable which is connected to
contacts and having a housing cover, which rests on the upper side of the
plug body, and where the plug body and the cover are provided with
openings shaped in such a way that they receive secondary locking arms
therein, said secondary locking arms in the state in which they are
inserted into the plug body lie between the plug adapter and the first
locking arms, in order to fix the first locking arms in this vertical
position, characterized in that at least one of the secondary locking arms
is provided with an arm attachment, which is shaped in such a way that it
removes a jumpering clip from at least one contact pin in the firing
element receptacle.
9. The plug-in connector according to claim 8, characterized in that the
arm attachment extends transversely to the secondary locking arm on which
it is arranged.
10. The plug-in connector according to claim 9, characterized in that the
cable receiving groove has teeth to hold the cable and in that fastening
of the housing cover on the upper side of the plug body takes place by
means of lateral and rear fastening lugs, which extend downwards from the
cover, the rear fastening lugs being clipped into by detents, which are
arranged on U-shaped flexible legs, which in turn are arranged in the
vicinity of the cable-receiving groove on the plug body.
11. The plug-in connector according to claim 10, characterized in that the
U- shaped flexible legs are arranged with the bent part upwards and have a
first straight leg, the free end of which is connected to the plug body at
its bottom, having a curved region which extends to the upper side of the
plug body and a second straight leg, at the free end of which the detent
is arranged.
12. The plug-in connector according to claim 11, characterized in that the
underside of the cover has U-shaped profiles, which are shaped to
complement the second straight leg and at least part of the curved part of
the U-shaped flexible leg, so that these profiles receive the flexible
legs and the rear fastening lugs of the cover represent part of these
profiles.
Description
BACKGROUND OF THE INVENTION
The present invention relates to a plug-in connector according to the
precharacterizing clause of Patent claim 1.
Plug-in connectors of this type are used, in particular, for connecting
airbag firing systems and for fitting onto their firing element
receptacles. The firing element receptacles are situated at locations in
an automobile where slimline dimensioning of the plug-in connectors is
important for reasons of space.
Plug-in connectors for connection to a firing element receptacle are
already known, these connectors having a firing element adapter, locking
arms and a plug body, the plug body receiving a connecting cable in a
cable-receiving groove (9) which is provided with retaining teeth (10).
The connecting cable is connected to contacts and a housing cover closes
off the housing body at the top.
In the past, the fastening of the housing cover to the housing body was
achieved unsatisfactorily, inasmuch as forces acting on the connection
cable transversely to its longitudinal extent were able to cause the cable
to be torn out and the housing cover to be lifted off.
The airbag plug according to the prior art (for example EP 0 591 948) has,
furthermore, secondary locking means, which comprises locking arms which
are arranged on a stem captively fastened to the plug housing and are
pushed through the housing cover between the locking arms and the plug
adapter. Consequently, unintentional detachment of the airbag plug from
the firing element receptacle was made impossible. In the case of this
known plug-in connector, removal of a jumper from the firing element pins
takes place when the plug adapter is inserted into the corresponding
counterpart on the firing element receptacle. Thus, at a time when the
plug-in connector has not yet arrived in its final position on the plug
receptacle. This may result in an undefined position of the plug-in
connector, it not being possible to check the position of the secondary
locking means.
The present invention is based on the object of improving a plug-in
connector of the generic type in such a way that tearing out of the
housing cover is impossible and checking the position of the plug-in
connector and of the secondary locking means becomes possible electrically
by means of the jumper, without any additional outlay.
This object is achieved according to the claims. Preferred embodiments of
the present invention are characterized in the subclaims.
BRIEF DESCRIPTION OF THE DRAWINGS
The invention is explained in more detail below by describing an exemplary
embodiment, with reference to the drawing, in which:
FIG. 1 shows a perspective view of the plug-in connector according to the
invention,
FIG. 2 shows views of details of the cable outlet and of the locking of the
housing cover, and
FIG. 3 shows a perspective, partially sectional part-view of the plug
adapter and its counterpart in the firing element receptacle of an airbag
system.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
FIG. 1 shows the plug-in connector 1, which is fitted onto the firing
element receptacle 2 of an airbag restraint system. A plug adapter 3 is
plugged, together with locking arms 4 attached at the sides and parallel
to the plugging direction, into the corresponding counterpart in the
firing element receptacle 2. The plug body 5 is of a low overall height.
On the right-hand side, the connecting cable 6, with its sheathing, is
introduced into the plug body 5, where the connecting cables are connected
to the contacts 7, 8. The connecting cable 6 lies in the plug body in a
cable-receiving groove 9, which is provided with cells 10 or ribs which
run transversely to the longitudinal extent of the cable, engage in the
cable sheath and thus prevent the cable from being torn out by squeezing
it. A cover 11 closes the plug body 5 at the top and has fastening lugs 12
on its side edges, and also rear fastening lugs 13 to both sides of the
cable outlet. The rear fastening lugs 13 are open downwards, the opening
having a U-shaped profile 19 and enclosing U-shaped legs 15, which are
arranged correspondingly on the plug body 5. These counterparts form an
inverted U, with two straight legs 16, 18 and a bent part 17 arching over
them. Formed on the lowermost end of the straight leg 18 is a detent 14,
which clips into a corresponding opening on the rear fastening lug as soon
as the cover 11 is pressed onto the plug body 5. Detents 23 are
correspondingly arranged on the lateral fastening lugs 12; they can be
seen in FIG. 2 and clip into corresponding openings in the side walls of
the plug body 5. These openings lie in the lower region of angled-off
trapezoidal recesses in the side walls, into which the correspondingly
shaped lugs 12 engage, and, in the clipped state, are aligned with the
side wall of the plug body.
Provided in the housing cover are openings 25, 26, with which corresponding
openings 27, 28 in the plug body 5 are aligned and which allow secondary
locking arms, which are captively fastened on a stem, to penetrate through
the plug cover 11 and the plug body 5 between the plug adapter 3 and the
locking arms 4. A secondary locking arm 29 has an attachment 31 which, as
FIG. 3 shows, makes it possible to detach the jumpering clip 32 from the
contact 33, in that it wedges itself between the two. Consequently, only
when the secondary locking is inserted, with the plug-in connection in the
plugged-together state, is the jumpering overcome and the plugging of the
secondary locking can be checked electrically, without any additional
outlay. Since, in this state, at the same time unintentional detachment is
no longer possible on account of the engagement of the secondary locking
arms, a more secure state is thereby ensured in an optimum way.
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